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  1. ...the observation is not confounded by TF binding. Nucleosome fragility is not associated with a specific epigenetic state Through comparisonwith previously generated data sets, we asked whether any histone post-translationalmodifications, histone variants, or chromatin states were positively associated...
  2. ...DNA properties of HNAR promote both high nucleosome occupancy and differential binding of TFs. In the first step, already before ZGA, Pou5f3 and Nanog destabilize nucleosomes at HNAR centers -wide. In the second step, post-ZGA, Nanog, Pou5f3, and SoxB1 maintain open chromatin state on the subset...
  3. .... (D) Nucleosome occupancy at all time points for the 41,663 high-confidence nucleosomes, defined as nucleosomes with occupancy greater than the 25th percentile in both WT and cac1Δ cells following the 40-min chase period.NCOP of WT cells revealed that EdU-labeled nascent chromatin at the fork...
  4. ...reproduction.Cells control gene expression through multiple mechanisms, including regulation of chromatin state and transcription in the nucleus, mRNA export to the cytoplasm, and translation to protein. Argonaute (AGO) proteins play a major role in fine-tuning gene expression through post...
  5. ...that DANPOS is also robust in defining functional dynamic nucleosomes, not only in promoters, but also in distal regulatory regions in the mammalian . [Supplemental material is available for this article.] Nucleosomes are fundamental building blocks of primary chromatin structure. Each nucleosome is composed...
  6. ...structure have been limited to a few target genes. These studies revealed a variety of effects of the corepressor on chromatin architectures. In some instances, Cyc8–Tup1 influences nucleosome locations only in the promoter region, as is the case at RNR2 and RNR3 (Li and Reese 2001; Davie et al. 2002...
  7. ...relocate from the nuclear periphery to the center of the nucleus into a hypercluster; chromatin is found in a compacted, hypoacetylated state; and transcription is globally shutdown. Yet, Q cells can restart transcription within minutes of refeeding. Here, we follow the global decrease of transcription...
  8. ...to colored circles), suggesting that CTCF occupancy is reduced by >30% for all three CTCF target sites (SHB, MIR152, and CCDC85C) due to mCG deposition. The remaining chromatin-bound CTCF was found to have mCG in its core binding, indicating a possible transition state where CTCF is either poised to leave...
  9. ...of “fragilenucleosomes is obtained only after relatively light MNase digestion of chromatin (Weiner et al. 2010; Xi et al. 2011). Moreover, while nucleosomes are by far the most widespread DNA-binding factors that interfere with MNase digestion, many other DNA-binding proteins provide some level...
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  10. ...of the four core histones, H2A, H2B, H3, and H4, forming a histone octamer, around which is wrapped ;147 bp of DNA (Luger et al. 1997). Early nuclease digestion studies of chromatin in nuclei revealed a characteristic ladder of DNA bands in a gel, indicating that nucleosomes are regularly spaced along the DNA...
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